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OncomiR detection in circulating body fluids: a PDMS microdevice perspective.

机译:循环体液中的OncomiR检测:pDms微观设备观点。

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摘要

There is an increasing interest in circulating microRNAs (miRNAs) as potential minimally invasive diagnostic biomarkers in oncology. Considerable efforts are being made in the development of lab-on-a-chip devices for biomedical applications to purify and detect miRNAs from biological fluids. Here, we report the development of an innovative polydimethylsiloxane (PDMS)-based parallel device whose internal surface can opportunely be functionalized with positively charged 3-aminopropyltriethoxysilane (APTES) alone or mixed with two different neutral poly(ethylene glycol) silanes (PEG-s). The differently functionalized internal surfaces of the PDMS chip were characterized with s-SDTB (sulfosuccinimidyl-4-o-(4,4-dimethoxytrityl) butyrate) and the portion of the surface able to adsorb a synthetic fluorescently labeled miRNA was determined. Interestingly, the adsorbed miRNA (both synthetic and cell supernatant-derived) was found mainly on the bottom surface of the chip and could be reverse transcribed into cDNA directly on the same PDMS chip used for its purification, saving hours with respect to the use of standard purification kits. We identified 0.1% APTES/0.9% PEG-silane as the most efficient PDMS functionalization to capture both synthetic and extracellular miRNA. Moreover, the amount of captured miRNA was increased by treating the cell supernatant with a commercially available lysis buffer for RNA extraction. We assessed that the available miRNA binding sites on the functionalized surface were efficiently saturated with only one incubation, shortening the time and greatly simplifying the protocol for miRNA purification from biological samples. Finally, the extracellular miRNA purification efficiency of the PDMS functionalized multichip determined via real-time quantitative polymerase chain reaction (RT-qPCR) was confirmed by droplet digital PCR (ddPCR) quantification. This work shows an innovative, rapid and easy to use microdevice for the purification and reverse transcription of circulating miRNAs, approaching the realization of diagnostic and prognostic oncomiR-based assays.
机译:对循环微RNA(miRNA)作为肿瘤学中潜在的微创诊断生物标志物的兴趣日益浓厚。在开发用于生物医学应用的芯片实验室设备以从生物体液中纯化和检测miRNA的过程中,已经做出了巨大的努力。在这里,我们报告了一种创新的基于聚二甲基硅氧烷(PDMS)的并联设备的开发,该设备的内表面可以单独用带正电荷的3-氨丙基三乙氧基硅烷(APTES)或与两种不同的中性聚(乙二醇)硅烷(PEG-s)混合进行功能化)。用s-SDTB(磺基丁二酰亚胺-4-邻-(4,4-二甲氧基三苯甲基)丁酸酯)表征PDMS芯片功能不同的内表面,并确定能够吸附合成的荧光标记miRNA的表面部分。有趣的是,吸附的miRNA(合成的和细胞上清液均被发现)主要位于芯片的底表面,并且可以直接在用于纯化的同一PDMS芯片上反转录为cDNA,从而节省了数小时的使用时间。标准纯化套件。我们确定0.1%APTES / 0.9%PEG-硅烷是捕获合成和细胞外miRNA的最有效的PDMS功能。此外,通过用可商购的用于RNA提取的裂解缓冲液处理细胞上清液来增加捕获的miRNA的量。我们评估了仅一次孵育即可有效饱和功能化表面上可用的miRNA结合位点,从而缩短了时间并大大简化了从生物样品中纯化miRNA的流程。最后,通过液滴定量PCR(ddPCR)定量确定了通过实时定量聚合酶链反应(RT-qPCR)确定的PDMS功能化多芯片的细胞外miRNA纯化效率。这项工作显示了一种创新,快速且易于使用的微型设备,用于纯化和逆转录循环miRNA,正在接近基于诊断和预后基于OncomiR的检测方法。

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